DNP/solid state NMR probehead for the investigation of oriented membranes

Helical membrane proteins comprise one third of the expressed proteins encoded in a typical genome. Other membrane proteins are typically beta sheets. Their function varies from pore formation, signaling to antimicrobial activity. They are also capable of transporting large cargo such as proteins or...

Full description

Bibliographic Details
Main Author: Sarrouj, Hiba
Language:English
Published: Université de Strasbourg 2014
Subjects:
Online Access:http://tel.archives-ouvertes.fr/tel-01038015
http://tel.archives-ouvertes.fr/docs/01/03/80/15/PDF/Sarrouj_Hiba_2014_ED222.pdf
id ndltd-CCSD-oai-tel.archives-ouvertes.fr-tel-01038015
record_format oai_dc
spelling ndltd-CCSD-oai-tel.archives-ouvertes.fr-tel-010380152014-10-14T03:31:53Z http://tel.archives-ouvertes.fr/tel-01038015 2014STRAF005 http://tel.archives-ouvertes.fr/docs/01/03/80/15/PDF/Sarrouj_Hiba_2014_ED222.pdf DNP/solid state NMR probehead for the investigation of oriented membranes Sarrouj, Hiba [SDV:SA] Life Sciences/Agricultural sciences [SDV:SA] Sciences du Vivant/Sciences agricoles [PHYS:COND:CM_GEN] Physics/Condensed Matter/Other [PHYS:COND:CM_GEN] Physique/Matière Condensée/Autre Nuclear magnetic resonance Membrane proteins Dynamic nuclear polarization (DNP) Antimicrobial peptides Peptide orientation Cross polarization (CP) Helical membrane proteins comprise one third of the expressed proteins encoded in a typical genome. Other membrane proteins are typically beta sheets. Their function varies from pore formation, signaling to antimicrobial activity. They are also capable of transporting large cargo such as proteins or nucleic acids across the cell membrane. Recently, peptides have emerged as promising tools in drug delivery. Membrane proteins can be synthesized chemically or expressed and isotopically labeled in bacteria, isolated, purified and reconstituted into fully hydrated lipid bilayers. The bilayer orientation is kept mechanically by putting them between glass plates. While interacting with these bilayers they exhibit a variety of configurations depending on the lipids composition and thickness. Solid-state Nuclear Magnetic Resonance (NMR) on oriented bilayers is one way to access the topology of peptides associated with phospholipid membranes. Oriented membrane protein are difficult to study with analytical techniques because of their poor solubility outside the lipid membrane, difficulty of expression in bacteria in big quantities, difficulty to crystallize, and they are too large for solution NMR study. The intensity of an NMR signal depends on several factors such as polarization P and magnetic field magnitude B0. One of the major drawbacks of NMR spectroscopy is low sensitivity. This is caused by the small magnetic moment of the nuclear spins which results in a modest Zeeman splitting of the nuclear spin energy levels and therefore in a limited Boltzmann Polarization. The aim of this project is to obtain a better signal from membrane proteins. Thus a Low temperature (LT) solid state NMR with Dynamic Nuclear Polarization (DNP) probe head was created. DNP is an ingenious technique that is used to transfer polarization from highly polarized targets to less polarized nuclei using microwave irradiation. Microwaves will excite selectively the electron spins which will transfer their polarization to the pool of proton nuclei, the proton NMR signal can be enhanced by 660 times. A probe head for DNP enhanced solid state NMR at 100 K and 9.4 T is described. A probe head includes the mechanical piece that holds the sample in the magnetic center of the NMR magnet. It is a tunable antenna that irradiates and detects the rf fields used in NMR. The centerpiece of the probe is the solenoidal or saddle coil surrounding the sample. The feasibility of such a DNP experiment is proven on magic angle oriented sample spinning. These experiments are conducted on oriented samples wrapped into a rotor. Through their orientation with regards to B0 is lost, enhancement values as high as 17 are obtained. [...] 2014-01-09 eng PhD thesis Université de Strasbourg
collection NDLTD
language English
sources NDLTD
topic [SDV:SA] Life Sciences/Agricultural sciences
[SDV:SA] Sciences du Vivant/Sciences agricoles
[PHYS:COND:CM_GEN] Physics/Condensed Matter/Other
[PHYS:COND:CM_GEN] Physique/Matière Condensée/Autre
Nuclear magnetic resonance
Membrane proteins
Dynamic nuclear polarization (DNP)
Antimicrobial peptides
Peptide orientation
Cross polarization (CP)
spellingShingle [SDV:SA] Life Sciences/Agricultural sciences
[SDV:SA] Sciences du Vivant/Sciences agricoles
[PHYS:COND:CM_GEN] Physics/Condensed Matter/Other
[PHYS:COND:CM_GEN] Physique/Matière Condensée/Autre
Nuclear magnetic resonance
Membrane proteins
Dynamic nuclear polarization (DNP)
Antimicrobial peptides
Peptide orientation
Cross polarization (CP)
Sarrouj, Hiba
DNP/solid state NMR probehead for the investigation of oriented membranes
description Helical membrane proteins comprise one third of the expressed proteins encoded in a typical genome. Other membrane proteins are typically beta sheets. Their function varies from pore formation, signaling to antimicrobial activity. They are also capable of transporting large cargo such as proteins or nucleic acids across the cell membrane. Recently, peptides have emerged as promising tools in drug delivery. Membrane proteins can be synthesized chemically or expressed and isotopically labeled in bacteria, isolated, purified and reconstituted into fully hydrated lipid bilayers. The bilayer orientation is kept mechanically by putting them between glass plates. While interacting with these bilayers they exhibit a variety of configurations depending on the lipids composition and thickness. Solid-state Nuclear Magnetic Resonance (NMR) on oriented bilayers is one way to access the topology of peptides associated with phospholipid membranes. Oriented membrane protein are difficult to study with analytical techniques because of their poor solubility outside the lipid membrane, difficulty of expression in bacteria in big quantities, difficulty to crystallize, and they are too large for solution NMR study. The intensity of an NMR signal depends on several factors such as polarization P and magnetic field magnitude B0. One of the major drawbacks of NMR spectroscopy is low sensitivity. This is caused by the small magnetic moment of the nuclear spins which results in a modest Zeeman splitting of the nuclear spin energy levels and therefore in a limited Boltzmann Polarization. The aim of this project is to obtain a better signal from membrane proteins. Thus a Low temperature (LT) solid state NMR with Dynamic Nuclear Polarization (DNP) probe head was created. DNP is an ingenious technique that is used to transfer polarization from highly polarized targets to less polarized nuclei using microwave irradiation. Microwaves will excite selectively the electron spins which will transfer their polarization to the pool of proton nuclei, the proton NMR signal can be enhanced by 660 times. A probe head for DNP enhanced solid state NMR at 100 K and 9.4 T is described. A probe head includes the mechanical piece that holds the sample in the magnetic center of the NMR magnet. It is a tunable antenna that irradiates and detects the rf fields used in NMR. The centerpiece of the probe is the solenoidal or saddle coil surrounding the sample. The feasibility of such a DNP experiment is proven on magic angle oriented sample spinning. These experiments are conducted on oriented samples wrapped into a rotor. Through their orientation with regards to B0 is lost, enhancement values as high as 17 are obtained. [...]
author Sarrouj, Hiba
author_facet Sarrouj, Hiba
author_sort Sarrouj, Hiba
title DNP/solid state NMR probehead for the investigation of oriented membranes
title_short DNP/solid state NMR probehead for the investigation of oriented membranes
title_full DNP/solid state NMR probehead for the investigation of oriented membranes
title_fullStr DNP/solid state NMR probehead for the investigation of oriented membranes
title_full_unstemmed DNP/solid state NMR probehead for the investigation of oriented membranes
title_sort dnp/solid state nmr probehead for the investigation of oriented membranes
publisher Université de Strasbourg
publishDate 2014
url http://tel.archives-ouvertes.fr/tel-01038015
http://tel.archives-ouvertes.fr/docs/01/03/80/15/PDF/Sarrouj_Hiba_2014_ED222.pdf
work_keys_str_mv AT sarroujhiba dnpsolidstatenmrprobeheadfortheinvestigationoforientedmembranes
_version_ 1716717137195696128